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β-甘油磷酸诱导物理交联季铵化纤维素水凝胶的流变性研究。

Rheological study of physical cross-linked quaternized cellulose hydrogels induced by β-glycerophosphate.

机构信息

Department of Chemistry, Wuhan University, Wuhan 430072, China.

出版信息

Langmuir. 2012 Mar 20;28(11):4965-73. doi: 10.1021/la2046417. Epub 2012 Mar 8.

Abstract

As a weak base, β-glycerophosphate (β-GP) was used to spontaneously initiate gelation of quaternized cellulose (QC) solutions at body temperature. The QC/β-GP solutions are flowable below or at room temperature but gel rapidly under physiological conditions. In order to clarify the sol-gel transition process of the QC/β-GP systems, the complex was investigated by dynamic viscoelastic measurements. The shear storage modulus (G') and loss modulus (G″) as a function of (1) concentration of β-GP (c(β-GP)), (2) concentration of QC (c(QC)), (3) degree of substitution (DS; i.e., the average number of substituted hydroxyl groups in the anhydroglucose unit) of QC, (4) viscosity-average molecular weight (M(η)) of QC, and (5) solvent medium were studied by the oscillatory rheology. The sol-gel transition temperature of QC/β-GP solutions decreased with an increase of c(QC) and c(β-GP), the M(η) of QC, and a decrease of the DS of QC and pH of the solvent. The sol-gel transition temperature and time could be easily controlled by adjusting the concentrations of QC and β-GP, M(η) and DS of QC, and the solvent medium. Gels formed after heating were irreversible; i.e., after cooling to lower temperature they could not be dissolved to become liquid again. The aggregation and entanglement of QC chains, electrostatic interaction, and hydrogen bonding between QC and β-GP were the main factors responsible for the irreversible sol-gel transition behavior of QC/β-GP systems.

摘要

作为一种弱碱,β-甘油磷酸(β-GP)被用来在体温下自发引发季铵化纤维素(QC)溶液的胶凝。QC/β-GP 溶液在室温下或低于室温时为流动状态,但在生理条件下迅速凝胶。为了阐明 QC/β-GP 体系的溶胶-凝胶转变过程,通过动态粘弹性测量对复合物进行了研究。剪切储能模量(G')和损耗模量(G")作为(1)β-GP 浓度(c(β-GP)),(2)QC 浓度(c(QC)),(3)QC 的取代度(DS;即,在无水葡萄糖单元中取代的羟基的平均数目),(4)QC 的粘均分子量(M(η))和(5)溶剂介质的函数进行了研究,采用振荡流变学。QC/β-GP 溶液的溶胶-凝胶转变温度随 c(QC)和 c(β-GP)、QC 的 M(η)和 DS 的增加以及溶剂 pH 的降低而降低。通过调节 QC 和 β-GP 的浓度、QC 的 M(η)和 DS 以及溶剂介质,可以轻松控制溶胶-凝胶转变温度和时间。加热后形成的凝胶是不可逆的;也就是说,冷却到较低温度后,它们不能再溶解为液体。QC 链的聚集和缠结、QC 与 β-GP 之间的静电相互作用和氢键是导致 QC/β-GP 体系不可逆溶胶-凝胶转变行为的主要因素。

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